西苏门答腊 SARS-CoV-2 的动态演变:分析 S 基因变异及其对公共卫生和疫苗策略的影响。

Q3 Agricultural and Biological Sciences
Linosefa Linosefa, Hasmiwati Hasmiwati, Jamsari Jamsari, Andani Eka Putra
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引用次数: 0

摘要

<b>背景与目的:</b> 全球 SARS-CoV-2 大流行凸显了通过基因组监测跟踪病毒演变的重要性,尤其是对疫苗开发至关重要的 SARS-CoV-2 棘突蛋白的变异。尽管全球都在关注变异,但像印度尼西亚西苏门答腊这样的地区却缺乏全面的基因组分析,因此本研究对西苏门答腊三次大流行中的 S 基因突变进行了分析。<b>材料与方法:</b>通过Illumina MiSeq仪器进行下一代测序,利用2020年3月至2022年11月期间收集的352份匿名样本数据集,并使用CLC Genomics Workbench<sup>®</sup> 21版本21.0.3对S基因突变进行严格分析。统计分析评估了随时间变化的突变发生率,探讨了与临床结果的关联。值得注意的是,Omicron变体(21K)表现出较高的突变率,表明其免疫逃避能力增强。比较分析突显了进化趋势,从变异较少的早期变种到高度适应的变种,如Delta(21I)和Omicron。SARS-CoV-2 演变的动态性质强调了持续监控、快速公共卫生反应和疫苗适应性的重要性。 <b>结论:</b> 这项研究为了解病毒的演变情况提供了宝贵的见解,强调了持续研究、全球合作和适应性疫苗策略的必要性,以有效管理 COVID-19 不断演变的威胁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Evolution of SARS-CoV-2 in West Sumatra: Analyzing S Gene Mutations Across Variants and Their Impact on Public Health and Vaccine Strategies.

<b>Background and Objective:</b> The global SARS-CoV-2 pandemic highlights the importance of tracking virus evolution through genomic surveillance, especially concerning mutations in the SARS-CoV-2 spike protein, crucial for vaccine development. Despite global concern over variants, regions like West Sumatra, Indonesia, lack thorough genomic analysis, prompting this study to analyze S gene mutations across three pandemic waves in West Sumatra. <b>Materials and Methods:</b> Next-generation sequencing was conducted through the Illumina MiSeq instrument to leverage a dataset of 352 anonymized samples collected between March, 2020 and November, 2022 and rigorous analysis of S gene mutation using CLC Genomics Workbench<sup>®</sup> 21 version 21.0.3 were employed. Statistical analyses assessed mutation prevalence over time, exploring associations with clinical outcomes. <b>Results:</b> The findings revealed significant variability in mutation profiles across different variants. Notably, the Omicron variant (21K) exhibited a high mutation rate, suggesting enhanced immune evasion capabilities. Comparative analysis highlighted evolutionary trends, from early variants with fewer mutations to highly adapted forms like Delta (21I) and Omicron. The dynamic nature of SARS-CoV-2 evolution underscores the importance of continuous surveillance, rapid public health response and vaccine adaptation. <b>Conclusion:</b> This study contributes valuable insights into the virus's evolving landscape, emphasizing the need for ongoing research, global collaboration and adaptable vaccine strategies to manage the evolving threat of COVID-19 effectively.

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来源期刊
Pakistan Journal of Biological Sciences
Pakistan Journal of Biological Sciences Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
1.90
自引率
0.00%
发文量
102
期刊介绍: Pakistan Journal of Biological Sciences (PJBS) is an international, peer-reviewed and well indexed scientific journal seeks to promote and disseminate the knowledge of biological sciences by publishing outstanding research in the field. Scope of the journal includes: Cell biology, developmental biology, structural biology, microbiology, entomology, toxicology, molecular biology & genetics, biochemistry, biotechnology, biodiversity, ecology, marine biology, plant biology and bioinformatics.
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